KRAS inhibition is an effective therapy for appendiceal adenocarcinoma

Saikat Chowdhury1, Ichiaki Ito1, Vinay K Pattalachinti1

  • 1Department of Gastrointestinal Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Abstract

Insights

KRAS inhibitors show promise for appendiceal adenocarcinoma (AA) by reducing tumor growth. However, resistance pathways and immune signaling shifts necessitate further research and combination strategies for effective treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Therapeutics

Background:

  • Appendiceal adenocarcinoma (AA) is a rare malignancy with limited therapeutic options.
  • KRAS mutations are prevalent in AA and represent a key therapeutic target, yet their clinical relevance is not fully understood.

Purpose of the Study:

  • To investigate the efficacy of KRAS inhibitors in preclinical models of appendiceal adenocarcinoma.
  • To characterize the molecular and microenvironmental responses to KRAS inhibition.
  • To assess the clinical outcomes of patients with appendiceal adenocarcinoma treated with KRAS inhibitors.

Main Methods:

  • Evaluation of KRAS G12D-specific (MRTX1133) and pan-KRAS inhibitors (RMC-6236) in KRAS mut AA organoid and orthotopic patient-derived xenograft (PDX) models.
  • Multi-omics profiling to analyze tumor-intrinsic and microenvironmental responses.
  • Clinical outcome assessment in six heavily pre-treated AA patients receiving KRAS inhibitors.

Main Results:

  • Both MRTX1133 and RMC-6236 demonstrated significant anti-tumor activity in preclinical models, reducing tumor growth and proliferation.
  • KRAS inhibition led to downregulation of cell proliferation pathways (E2F targets, RAS/ERK) but induced upregulation of EMT and TGF-β signaling, suggesting potential resistance mechanisms.
  • KRAS inhibition remodeled the tumor microenvironment, shifting cancer-associated fibroblasts and activating innate immune signaling.
  • All treated patients showed biochemical or clinical benefit, including complete response (CR), partial response (PR), and stable disease (SD).

Conclusions:

  • KRAS inhibitors effectively suppress tumor growth in KRAS mut AA, but adaptive resistance via EMT and TGF-β pathways warrants attention.
  • KRAS inhibition modulates the tumor microenvironment, potentially enhancing innate immune responses.
  • These findings support the continued clinical development of KRAS inhibitors in AA and suggest combination strategies targeting resistance and stromal remodeling.

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